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磷酸丝氨酸磷酸酶反应途径的结构表征:中间状态的晶体学“快照”

Structural characterization of the reaction pathway in phosphoserine phosphatase: crystallographic "snapshots" of intermediate states.

作者信息

Wang Weiru, Cho Ho S, Kim Rosalind, Jancarik Jaru, Yokota Hisao, Nguyen Henry H, Grigoriev Igor V, Wemmer David E, Kim Sung-Hou

机构信息

Department of Chemistry, University of California, Berkeley, CA 94720-5230, USA.

出版信息

J Mol Biol. 2002 May 31;319(2):421-31. doi: 10.1016/S0022-2836(02)00324-8.

Abstract

Phosphoserine phosphatase (PSP) is a member of a large class of enzymes that catalyze phosphoester hydrolysis using a phosphoaspartate-enzyme intermediate. PSP is a likely regulator of the steady-state d-serine level in the brain, which is a critical co-agonist of the N-methyl-d-aspartate type of glutamate receptors. Here, we present high-resolution (1.5-1.9 A) structures of PSP from Methanococcus jannaschii, which define the open state prior to substrate binding, the complex with phosphoserine substrate bound (with a D to N mutation in the active site), and the complex with AlF3, a transition-state analog for the phospho-transfer steps in the reaction. These structures, together with those described for the BeF3- complex (mimicking the phospho-enzyme) and the enzyme with phosphate product in the active site, provide a detailed structural picture of the full reaction cycle. The structure of the apo state indicates partial unfolding of the enzyme to allow substrate binding, with refolding in the presence of substrate to provide specificity. Interdomain and active-site conformational changes are identified. The structure with the transition state analog bound indicates a "tight" intermediate. A striking structure homology, with significant sequence conservation, among PSP, P-type ATPases and response regulators suggests that the knowledge of the PSP reaction mechanism from the structures determined will provide insights into the reaction mechanisms of the other enzymes in this family.

摘要

磷酸丝氨酸磷酸酶(PSP)是一大类酶中的一员,这类酶利用磷酸天冬氨酸 - 酶中间体催化磷酸酯水解。PSP可能是大脑中稳态D - 丝氨酸水平的调节因子,D - 丝氨酸是N - 甲基 - D - 天冬氨酸型谷氨酸受体的关键协同激动剂。在此,我们展示了来自詹氏甲烷球菌的PSP的高分辨率(1.5 - 1.9 Å)结构,这些结构定义了底物结合前的开放状态、与结合的磷酸丝氨酸底物形成的复合物(活性位点有D到N突变)以及与AlF3形成的复合物,AlF3是反应中磷酸转移步骤的过渡态类似物。这些结构与描述的BeF3 - 复合物(模拟磷酸化酶)和活性位点带有磷酸产物的酶的结构一起,提供了完整反应循环的详细结构图景。无配体状态的结构表明酶部分展开以允许底物结合,在底物存在下重新折叠以提供特异性。确定了结构域间和活性位点的构象变化。结合过渡态类似物的结构表明存在“紧密”中间体。PSP、P型ATP酶和响应调节因子之间存在显著的结构同源性和序列保守性,这表明从所确定的结构中了解PSP反应机制将为该家族中其他酶的反应机制提供见解。

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